Title :
Comprehensive analysis of strip- and slot-line guided forward, backward, and complex magnetostatic waves
Author :
Rafii-El-Idrissi, Rachid ; Marqués, Ricardo ; Medina, Francisco
Author_Institution :
Dept. de Electron. y Electromagn., Seville Univ., Spain
fDate :
9/1/2001 12:00:00 AM
Abstract :
This paper presents a comprehensive and accurate analysis of the guidance of volume and surface magnetostatic waves by strips or slots in the presence of a ferrite slab magnetized to saturation by an external uniform magnetic field. The strip/slot can be directly printed on the ferrite surface or separated from it by means of a dielectric layer of arbitrary thickness. The problem is posed in terms of a suitable integral equation accounting for the magnetostatic limit. This equation is solved by using a spectral-domain formulation. The proposed method allows for the consideration of arbitrary magnetization angles and the presence of upper and/or lower ground planes. Strip-guided forward, backward, and complex surface magnetostatic waves have been obtained and analyzed in terms of the appropriate waveguide parameters. Slot-guided backward volume magnetostatic waves have been also computed and studied. Theoretical results have been checked against theoretical (magnetostatic and full wave) and experimental data available in the literature with reasonable agreement
Keywords :
integral equations; magnetic microwave devices; magnetostatic wave devices; magnetostatic waves; microstrip lines; slot lines; spectral-domain analysis; strip lines; arbitrary magnetization angles; backward magnetostatic waves; complex magnetostatic waves; external uniform magnetic field; forward magnetostatic waves; ground planes; integral equation; magnetised ferrite slab; saturation; slot-guided backward volume MSW; slot-line guided MSWs; spectral-domain formulation; strip-line guided MSWs; surface magnetostatic waves; volume magnetostatic waves; waveguide parameters; Ferrites; Integral equations; Magnetic analysis; Magnetic fields; Magnetic separation; Magnetostatic waves; Saturation magnetization; Slabs; Strips; Surface waves;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on